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Transposable elements: Self-seekers of the germline, team-players of the soma

机译:转座元素:种系的自我寻求者,体细胞的团队合作者

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摘要

The germ track is the cellular path by which genes are transmitted to future generations whereas somatic cells die with their body and do not leave direct descendants. Transposable elements (TEs) evolve to be silent in somatic cells but active in the germ track. Thus, the performance of most bodily functions by a sequestered soma reduces organismal costs of TEs. Flexible forms of gene regulation are permissible in the soma because of the self-imposed silence of TEs, but strict licensing of transcription and translation is maintained in the germ track to control proliferation of TEs. Delayed zygotic genome activation (ZGA) and maternally inherited germ granules are adaptations that enhance germ-track security. Mammalian embryos exhibit very early ZGA associated with extensive mobilization of retroelements. This window of vulnerability to retrotransposition in early embryos is an indirect consequence of evolutionary conflicts within the mammalian genome over postzygotic maternal provisioning.
机译:胚道是基因传递给后代的细胞路径,而体细胞则随身体一起死亡,不会留下直接后代。转座元件 (TE) 在体细胞中进化为沉默,但在胚道中活跃。因此,隔离的胞体对大多数身体功能的执行降低了 TE 的有机体成本。由于 TE 的自我沉默,胞体中允许灵活形式的基因调控,但在胚道中保持严格的转录和翻译许可以控制 TE 的增殖。延迟的合子基因组激活 (ZGA) 和母系遗传的生殖颗粒是增强生殖轨道安全性的适应。哺乳动物胚胎表现出非常早期的ZGA,与逆转录元件的广泛动员有关。早期胚胎中这种易逆转录转座的窗口是哺乳动物基因组内关于合子后母体供应的进化冲突的间接结果。

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